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水螅足部的形成:下柄基部盘状细胞的定向分化

Foot formation in hydra: commitment of the basal disk cells in the lower peduncle.

作者信息

Kobayakawa Yoshitaka, Kodama Rie

机构信息

Department of Biology, Faculty of Science, Kyushu University, Ropponmatsu 4-2-1, Chuo-ku, Fukuoka 810-8560, Japan.

出版信息

Dev Growth Differ. 2002 Dec;44(6):517-26. doi: 10.1046/j.1440-169x.2002.00664.x.

Abstract

Foot regeneration in the freshwater hydra Pelmatohydra robusta was examined using a monoclonal antibody AE03 as a marker. This antibody specifically recognizes mucous-producing ectodermal epithelial cells in the basal disk, but not cells in the peduncle region located just above the basal disk in the foot. When the basal disk was removed by amputation at the upper or lower part of the peduncle, AE03-positive (basal disk) cells always appeared at the regenerating tip of the footless polyp approximately 12-16 h later. When a small piece of tissue was cut out from the upper or lower peduncle region, the tissue invariably turned into a smooth spherical or oblong shape within a few hours. AE03 signal appeared in these spheres variably depending on their origin: when tissue pieces were derived from the lower peduncle, the signal appeared in nearly all pieces and often covered the entire surface of the pieces within 24 h. In contrast, the signal appeared in less than 10% of pieces derived from the upper peduncle. Furthermore, the signal seldom covered more than half of the surface of these pieces. When maintained for many days, pieces derived from the upper peduncle often regenerated tentacles, whereas those from the lower peduncle seldom did. These and other observations suggest that epithelial cells in the peduncle can rapidly differentiate into basal disk cells when the basal tissue is removed. However, cells in the upper peduncle are not irreversibly committed to differentiate into basal disk cells because, when cut out as small tissue pieces, they could remain AE03 negative and become tentacle cells. In contrast, the cells in the lower peduncle apparently are irreversibly committed to differentiate into basal disk cells, as they always turned rapidly into AE03-positive cells once they were physically separated from (and freed from the influence of) the basal disk itself, regardless of the separation methods used.

摘要

利用单克隆抗体AE03作为标记物,对强壮绿水螅足部的再生过程进行了研究。该抗体特异性识别基盘处产生黏液的外胚层上皮细胞,但不识别足部基盘上方柄部区域的细胞。当通过在柄部的上部或下部进行截肢手术切除基盘时,大约12 - 16小时后,AE03阳性(基盘)细胞总会出现在无足水螅体再生的顶端。当从柄部的上部或下部切下一小片组织时,该组织在数小时内总会变成光滑的球形或椭圆形。AE03信号在这些球体中出现的情况因来源而异:当组织块来自柄部下部时,几乎所有组织块中都会出现信号,并且在24小时内信号常常覆盖组织块的整个表面。相比之下,来自柄部上部的组织块中,信号出现在不到10%的组织块中。此外,信号很少覆盖这些组织块表面的一半以上。当培养许多天后,来自柄部上部的组织块常常会再生出触手,而来自柄部下部的组织块很少这样。这些以及其他观察结果表明,当基盘组织被去除时,柄部的上皮细胞能够迅速分化为基盘细胞。然而,柄部上部的细胞并非不可逆转地注定要分化为基盘细胞,因为当切成小组织块时,它们可能保持AE03阴性并变成触手细胞。相比之下,柄部下部的细胞显然不可逆转地注定要分化为基盘细胞,因为一旦它们与基盘本身物理分离(并摆脱其影响),无论采用何种分离方法,它们总会迅速变成AE03阳性细胞。

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